首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Regulators of G-Protein Signaling (RGS) Proteins Promote Receptor Coupling to G-Protein-Coupled Inwardly Rectifying Potassium (GIRK) Channels
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Regulators of G-Protein Signaling (RGS) Proteins Promote Receptor Coupling to G-Protein-Coupled Inwardly Rectifying Potassium (GIRK) Channels

机译:G蛋白信号传导(RGS)蛋白的调节剂促进受体偶联与G蛋白偶联的内侧整流钾(GIRK)通道

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摘要

Regulators of G-protein signaling (RGS) proteins negatively modulate presynaptic mu-opioid receptor inhibition of GABA release in the ventrolateral periaqueductal gray (vIPAG). Paradoxically, we find that G-protein-coupled receptor (GPCR) activation of G-protein-gated inwardly rectifying K+ channels (GIRKs) in the v1PAG is reduced in an agonist- and receptor-dependent manner in transgenic knock-in mice of either sex expressing mutant RGS-insensitive Gao proteins. mu-Opioid receptor agonist activation of GIRK currents was reduced for DAMGO and fentanyl but not for [Met(5)]-enkephalin acetate salt hydrate (ME) in the RGS-insensitive heterozygous (Het) mice compared with wild-type mice. The GABA(B) agonist baclofen-induced GIRK currents were also reduced in the Het mice. We confirmed the role of G alpha o proteins in mu-opioid receptor and GABA(B) receptor signaling pathways in wild-type mice using myristoylated peptide inhibitors of G alpha o(1), and G alpha i(1-3) . The results using these inhibitors indicate that receptor activation of GIRK channels is dependent on the preference of the agonist-stimulated receptor for G alpha o versus that for G alpha i. DAMGO and fentanyl-mediated GIRK currents were reduced in the presence of the G alpha o, inhibitor, but not the G alpha i(1-3) inhibitors. In contrast, the G alpha o, peptide inhibitor did not affect ME activation of GIRK currents, which is consistent with results in the Het mice, but the G alpha i(1-3) inhibitors significantly reduced ME-mediated GIRK currents. Finally, the reduction in GIRK activation in the Het mice plays a role in opioid- and baclofen-mediated spinal antinociception, but not supraspinal antinociception. Thus, our studies indicate that RGS proteins have multiple mechanisms of modulating GPCR signaling that produce negative and positive regulation of signaling depending on the effector.
机译:G-蛋白信号传导(RGS)蛋白的调节剂对腹膜外皮(ViPAG)中的GABA释放的突触前u-ampioid受体抑制产生负面调节。矛盾的是,在V1PAG中发现G蛋白偶联的受体(GPCR)在V1PAG中偏转的k +通道(GIRKs)的激活是在转基因敲击小鼠中的激动剂和受体依赖性的性表达突变体RGS的不敏感高蛋白。对于野生型小鼠的RGS - 不敏感的杂合(HET)小鼠,Mu-Apioid受体激活Girk电流的激活,但不适用于[Met(5)] - Enkephalin乙酸盐水合物(ME)。 GABA(B)激动剂Baclofen诱导的GIRK电流也在Het小鼠中减少。我们在野生型小鼠中确认了GαO蛋白在MU-阿片类受体和GABA(B)受体信号传导途径的作用,所述野生型小鼠使用GαO(1)和Gαi(1-3)。使用这些抑制剂的结果表明GIRK通道的受体激活取决于激动剂刺激的受体的优选Gαo与Gα1相反。在Gαo,抑制剂的存在下,降低了该变量和芬太尼介导的GIRK电流,但不是Gαi(1-3)抑制剂。相比之下,Gαo,肽抑制剂没有影响我的GIRK电流的激活,这与HET小鼠的结果一致,但GαI(1-3)抑制剂显着降低了ME介导的GIRK电流。最后,Het小鼠中的GIRK激活的减少在阿片类药物和Baclofen介导的脊柱抗妇科中起作用,但不是袋鼠抗血症。因此,我们的研究表明,RGS蛋白质具有调节GPCR信号的多种机制,所述GPCR信号传递根据效应器产生信号传导的负和正调节。

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